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Low-cost rapid prototyping of whole-glass microfluidic devices

机译:全玻璃微流控设备的低成本快速原型设计

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A low-cost, straightforward, rapid prototyping of whole-glass microfluidic devices is presented using glass-etching cream that can be easily purchased in local stores. A self-adhered vinyl stencil cut out by a desktop digital craft cutter was used as an etching mask for patterning microstructures in glass using the glass-etching cream. A specific calcium-assisted glass-to-glass bonding at 115 °C in a standard laboratory oven for 2 h was used to complete the whole-glass microfluidic device fabrication process. Various functional microfluidic devices were demonstrated with this rapid prototyping method. The complete fabrication process from device-design concept to working device can be completed in approximately 3 to 4 h in a regular laboratory setting without the need of expensive equipment and the need to handle extremely hazardous hydrofluoric acid. This whole-glass rapid prototyping method will be of immediate benefit to the microfluidic and nano- or micro-fabrication community in potentially saving time and costs associated with prototyping of whole-glass microfluidic devices. Also, it lowers the barriers to new entrants to the field of microfluidics and could be useful at both undergraduate and graduate levels for hands-on microfabrication and microfluidic courses with limited resources for expensive and high tech equipment.
机译:使用玻璃蚀刻膏可以提供一种低成本,简单,快速的全玻璃微流控设备原型,可以在当地商店轻松购买。通过台式数字工艺切割机切出的自粘乙烯基模版用作蚀刻掩模,用于使用玻璃蚀刻膏对玻璃中的微结构进行图案化。在标准实验室烘箱中于115°C进行2 h的特定钙辅助玻璃与玻璃的粘合,以完成整个玻璃微流体装置的制造过程。通过这种快速成型方法展示了各种功能性微流体装置。从设备设计概念到工作设备的完整制造过程,可以在常规实验室环境中约3-4小时内完成,而无需昂贵的设备和处理极为危险的氢氟酸。这种全玻璃快速原型化方法将潜在地节省与全玻璃微流体装置原型化相关的时间和成本,从而对微流体和纳米或微加工领域具有直接的好处。而且,它降低了进入微流体领域的新障碍,并且在大学和研究生水平上,对于昂贵的高科技设备的有限资源的动手微制造和微流体课程都是有用的。

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